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US20140210402A1 - Charging device - Google Patents

Charging device
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Publication number
US20140210402A1
US20140210402A1US14/167,179US201414167179AUS2014210402A1US 20140210402 A1US20140210402 A1US 20140210402A1US 201414167179 AUS201414167179 AUS 201414167179AUS 2014210402 A1US2014210402 A1US 2014210402A1
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United States
Prior art keywords
voltage
power supply
charging
output terminal
value
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Granted
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US14/167,179
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US9252666B2 (en
Inventor
Kouichi SAKITA
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
TDK Corp
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TDK Corp
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Publication date
Priority claimed from JP2013015295Aexternal-prioritypatent/JP5998957B2/en
Priority claimed from JP2013030613Aexternal-prioritypatent/JP5994675B2/en
Application filed by TDK CorpfiledCriticalTDK Corp
Assigned to TDK CORPORATIONreassignmentTDK CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SAKITA, KOUICHI
Publication of US20140210402A1publicationCriticalpatent/US20140210402A1/en
Application grantedgrantedCritical
Publication of US9252666B2publicationCriticalpatent/US9252666B2/en
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Abstract

A charging device is configured with a power supply device and a DC-DC converter that have constant current voltage drooping type overcurrent protection characteristics and that are connected in series. A constant current value in a voltage drooping state of the DC-DC converter is lower than a constant current value in a voltage drooping state of the power supply device. The DC-DC converter is shifted to an operation state to supply a charging current of the constant current value to a charging target when a voltage value of a direct current voltage that is output from the power supply device reaches a maximum output voltage value or an approximate value thereof. Therefore, the charging target can be charged to a higher voltage even though a charging voltage of the charging target is low.

Description

Claims (7)

What is claimed is:
1. A charging device, comprising:
a power supply device having a constant current voltage drooping overcurrent protection characteristic, the power supply device including a first positive output terminal and a first negative output terminal, and outputting a first direct current voltage between the first positive output terminal and the first negative output terminal; and
a DC-DC converter that is connected to the power supply device in series, the DC-DC converter:
having the constant current voltage drooping overcurrent protection characteristic;
including a positive input terminal, a negative input terminal, a second positive output terminal and a second negative output terminal; and
outputting a second direct current voltage between the second positive output terminal and the second negative output terminal, wherein
the first positive output terminal is connected to the positive input terminal and the first negative output terminal is connected to the negative input terminal, and the DC-DC converter outputs the second direct current voltage by receiving the first direct current voltage as an operation voltage,
the power supply device is connected to the DC-DC converter in series by connecting the first positive output terminal to the second negative output terminal, and a charging target is connectable between the first negative output terminal and the second positive output terminal,
the power supply device has a first constant current value when the power supply device is in a voltage drooping state, the DC-DC converter has a second constant current value when the DC-DC converter is in the voltage drooping state, and the second constant current value is lower than the first constant current value, and
the DC-DC converter is shifted to an operation state to supply a charging current of the second constant current value to the charging target when a voltage value of the first direct current voltage reaches one of a maximum output voltage value and an approximate value of the maximum voltage value.
2. A charging device, comprising:
a plurality of power supply devices that are connected in series, each of the plurality of power supply devices having a positive output terminal and a negative output terminal;
a power source control device that sequentially shifts the plurality of power supply devices to an operation state in a predetermined order; and
a rectifying device that is connected between the positive output terminal and the negative output terminal of each of the plurality of power supply devices except a first power supply device of the plurality of power supply devices that is initially shifted to the operation state, and a forward direction of the rectifying device faces toward the positive outlet terminal, wherein
the positive output terminal of one of the first power supply device and a second power supply device of the plurality of power supply devices located at a low potential side is connected to the negative output terminal of one of the second power supply device and a third power supply device of the plurality of power supply devices located at a high potential side so as to serially connect the plurality of power supply devices, and
a battery is connected between the positive output terminal of one of the second power supply device and the third power supply device of the plurality of power supply devices located at a highest potential side and the negative output terminal of the first power supply device of the plurality of power supply devices located at a lowest potential side.
3. The charging device according toclaim 2, wherein
the power source control device compares a charging voltage of the battery with a predetermined threshold voltage, and
the power source control device shifts a next power supply device to the operation state in the predetermined order when the charging voltage reaches the threshold voltage.
4. The charging device according toclaim 3, wherein
the threshold voltage is a total maximum output voltage value that is obtained by adding each maximum output voltage value of each of the plurality of power supply devices that are shifted to the operation state.
5. The charging device according toclaim 3, wherein
the threshold voltage is an approximate value of a total maximum output voltage value that is obtained by adding each maximum output voltage value of each of the plurality of power supply devices that are shifted to the operation state.
6. The charging device according toclaim 3, wherein
the power source control device sequentially shifts the plurality of power supply devices to the operation state in an order of descending maximum output current values.
7. The charging device according toclaim 2, wherein
the power source control device sequentially shifts the plurality of power supply devices to the operation state in an order of descending maximum output current values.
US14/167,1792013-01-302014-01-29Charging deviceActive2034-09-21US9252666B2 (en)

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
JP2013015295AJP5998957B2 (en)2013-01-302013-01-30 Charger
JP2013-0152952013-01-30
JP2013-0306132013-02-20
JP2013030613AJP5994675B2 (en)2013-02-202013-02-20 Charger

Publications (2)

Publication NumberPublication Date
US20140210402A1true US20140210402A1 (en)2014-07-31
US9252666B2 US9252666B2 (en)2016-02-02

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US14/167,179Active2034-09-21US9252666B2 (en)2013-01-302014-01-29Charging device

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN104201727A (en)*2014-08-012014-12-10惠州Tcl移动通信有限公司Rapid charging method and device
CN104751287A (en)*2015-03-302015-07-01浪潮通信信息系统有限公司IDC electric quantity charging method
US20160268818A1 (en)*2015-03-102016-09-15Lsis Co., Ltd.Electricity providing system including battery energy storage system
US20170104340A1 (en)*2015-10-082017-04-13Astec International LimitedConstant current limiting protection for series coupled power supplies
US20170126026A1 (en)*2015-10-282017-05-04Dialog Semiconductor (Uk) LimitedBattery Charging Regulator
CN107807602A (en)*2017-09-252018-03-16许继电源有限公司A kind of high-voltage charging device
US10367423B1 (en)*2016-09-162019-07-30Mitsubishi Electric CorporationPower conversion device
CN112271777A (en)*2020-10-272021-01-26东莞光亚智能科技有限公司Series battery monomer constant voltage circuit and control method thereof
US20210376622A1 (en)*2020-06-022021-12-02Qualcomm IncorporatedTrickle charging and precharging a dead multi-cell-in-series battery

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US9954453B1 (en)*2017-06-272018-04-24Tdk CorporationSwitching power supply device and switching control circuit
US11088559B2 (en)*2018-06-062021-08-10Texas Instruments IncorporatedCurrent protection for battery charger

Citations (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20110025271A1 (en)*2009-07-282011-02-03Denso CorporationState monitoring apparatus for assembled battery
US20110291616A1 (en)*2010-04-202011-12-01Moderntec Co., Ltd.Universal charging device
US20130049457A1 (en)*2011-08-312013-02-28Sony CorporationElectric storage apparatus, electronic device, electric vehicle, and electric power system
US20130113437A1 (en)*2011-11-072013-05-09Sony CorporationControl apparatus, control method and control system

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
JP2000166114A (en)1998-11-302000-06-16Suzuki Motor CorpBattery charger

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20110025271A1 (en)*2009-07-282011-02-03Denso CorporationState monitoring apparatus for assembled battery
US20110291616A1 (en)*2010-04-202011-12-01Moderntec Co., Ltd.Universal charging device
US20130049457A1 (en)*2011-08-312013-02-28Sony CorporationElectric storage apparatus, electronic device, electric vehicle, and electric power system
US20130113437A1 (en)*2011-11-072013-05-09Sony CorporationControl apparatus, control method and control system

Cited By (13)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN104201727A (en)*2014-08-012014-12-10惠州Tcl移动通信有限公司Rapid charging method and device
US10090685B2 (en)*2015-03-102018-10-02Lsis Co., Ltd.Electricity providing system including battery energy storage system
US20160268818A1 (en)*2015-03-102016-09-15Lsis Co., Ltd.Electricity providing system including battery energy storage system
CN104751287A (en)*2015-03-302015-07-01浪潮通信信息系统有限公司IDC electric quantity charging method
US20170104340A1 (en)*2015-10-082017-04-13Astec International LimitedConstant current limiting protection for series coupled power supplies
US10700518B2 (en)*2015-10-082020-06-30Astec International LimitedConstant current limiting protection for series coupled power supplies
US20170126026A1 (en)*2015-10-282017-05-04Dialog Semiconductor (Uk) LimitedBattery Charging Regulator
US10141764B2 (en)*2015-10-282018-11-27Dialog Semiconductor (Uk) LimitedBattery charging regulator
US10367423B1 (en)*2016-09-162019-07-30Mitsubishi Electric CorporationPower conversion device
CN107807602A (en)*2017-09-252018-03-16许继电源有限公司A kind of high-voltage charging device
US20210376622A1 (en)*2020-06-022021-12-02Qualcomm IncorporatedTrickle charging and precharging a dead multi-cell-in-series battery
US12388361B2 (en)*2020-06-022025-08-12Qualcomm IncorporatedBattery charging circuit and methods for trickle charging and precharging a dead multi-cell-in-series battery
CN112271777A (en)*2020-10-272021-01-26东莞光亚智能科技有限公司Series battery monomer constant voltage circuit and control method thereof

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